智能切断管道和酒吧

C. Machado, J. Mendes, J. Fonseca
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引用次数: 3

摘要

传统上,金属管或金属棒的自动切断机采用恒定切割速度模式。这种操作模式,恒定的切割速度加上不同的被切割材料,使锯暴露在可变的切割力下。因此,通常将切断机设置为最坏的预期状态,否则会发生锯和机器的过度磨损。此外,传统的切断机需要调整限位开关的位置,以便在切割完成时自动检测。本文的目的是研究控制算法在金属管材或棒材的切割过程中的应用,在工业切割机上实现可变轮廓,市售。该算法涉及到实时切割控制和切割端自动检测。该算法在低成本的可编程逻辑控制器(PLC)中实现,允许其在工业应用中使用,而不会显着增加机器成本。所有算法的开发都考虑到与切割机操作相关的安全问题,以防止灾难性故障。此外,所有与过程相关的参数都使用OPC(对象链接和嵌入-用于过程控制)在个人计算机上进行监控。
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Intelligent cutting-off of pipes and bars
Traditionally, automatic cutting-off machines, of metallic pipes or bars, use a constant cutting velocity mode. This mode of operation, constant cutting velocity combined with different profiles of materials to be cut, exposes the cutting saw to variable cutting forces. Therefore, the cutting off machine is usually set for the worst expected conditions, otherwise excessive wear of the saw and machine will occur. Further, traditional cutting-off machines require the adjustment of the position of a limit switch in order to automatically detect when the cut of a piece has been completed. The aim of this paper is to study the application of control algorithms to the process of cutting-off of metallic pipes or bars, with variable profiles implemented in an industrial cutting-off machine, commercially available. The presented algorithm concern real-time cutting control and automatic detection of the cutting end. The algorithms are implemented in a low cost programmable logic controller (PLC), allowing its use in industrial applications without significant increase on machine cost. All algorithms were developed having in mind safety issues relative to the operation of the cutting machine in order to prevent catastrophic failure. Also, all process related relevant parameters are monitored on a personal computer using OPC (object linking and embedding - for process control).
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